Removes redundant convert functions
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a8cf2fdd9e
commit
4716eb29bf
4 changed files with 16 additions and 128 deletions
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@ -24,15 +24,6 @@ function hexToBytes(hex) {
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})
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}
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/**
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* Create a byte array representing a number with the given length
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*/
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function numToBytes(num, bytes) {
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if (bytes === undefined) bytes = 8
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if (bytes === 0) return []
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return [num % 256].concat(numToBytes(Math.floor(num / 256), bytes - 1))
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}
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/**
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* Convert a byte array to the number that it represents
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*/
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@ -41,42 +32,6 @@ function bytesToNum(bytes) {
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return bytes[0] + 256 * bytesToNum(bytes.slice(1))
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}
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/**
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* Turn an integer into a "var_int".
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*
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* "var_int" is a variable length integer used by Bitcoin's binary format.
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*
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* Returns a byte array.
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*/
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function numToVarInt(num) {
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if (num < 253) return [num]
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if (num < 65536) return [253].concat(numToBytes(num, 2))
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if (num < 4294967296) return [254].concat(numToBytes(num, 4))
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return [255].concat(numToBytes(num, 8))
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}
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/**
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* Turn an VarInt into an integer
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*
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* "var_int" is a variable length integer used by Bitcoin's binary format.
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*
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* Returns { bytes: bytesUsed, number: theNumber }
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*/
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function varIntToNum(bytes) {
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var prefix = bytes[0]
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var viBytes =
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prefix < 253 ? bytes.slice(0, 1)
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: prefix === 253 ? bytes.slice(1, 3)
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: prefix === 254 ? bytes.slice(1, 5)
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: bytes.slice(1, 9)
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return {
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bytes: prefix < 253 ? viBytes : bytes.slice(0, viBytes.length + 1),
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number: bytesToNum(viBytes)
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}
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}
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function bytesToWords(bytes) {
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assert(Array.isArray(bytes) || Buffer.isBuffer(bytes), 'Input must be a byte array')
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var words = []
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@ -110,10 +65,7 @@ module.exports = {
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lpad: lpad,
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bytesToHex: bytesToHex,
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hexToBytes: hexToBytes,
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numToBytes: numToBytes,
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bytesToNum: bytesToNum,
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numToVarInt: numToVarInt,
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varIntToNum: varIntToNum,
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bytesToWords: bytesToWords,
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wordsToBytes: wordsToBytes,
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bytesToWordArray: bytesToWordArray,
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@ -179,10 +179,11 @@ HDWallet.prototype.toBase58 = function(priv) {
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}
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HDWallet.prototype.derive = function(i) {
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var iBytes = convert.numToBytes(i, 4).reverse()
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, cPar = this.chaincode
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, usePriv = i >= HDWallet.HIGHEST_BIT
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, SHA512 = CJS.algo.SHA512
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var IB = new Buffer(4)
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IB.writeUInt32BE(i, 0)
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var cPar = this.chaincode
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var usePriv = i >= HDWallet.HIGHEST_BIT
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var I
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if (usePriv) {
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@ -191,18 +192,18 @@ HDWallet.prototype.derive = function(i) {
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// If 1, private derivation is used:
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// let I = HMAC-SHA512(Key = cpar, Data = 0x00 || kpar || i) [Note:]
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var kPar = this.priv.toBuffer().slice(0, 32)
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kPar = Array.prototype.slice.call(kPar)
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IB = Buffer.concat([new Buffer([0]), kPar, IB], 37)
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// FIXME: Dislikes buffers
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I = HmacFromBytesToBytes(SHA512, [0].concat(kPar, iBytes), cPar)
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I = HmacFromBytesToBytes(CJS.algo.SHA512, Array.prototype.slice.call(IB), cPar)
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} else {
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// If 0, public derivation is used:
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// let I = HMAC-SHA512(Key = cpar, Data = χ(kpar*G) || i)
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var KPar = this.pub.toBuffer()
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KPar = Array.prototype.slice.call(KPar)
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IB = Buffer.concat([KPar, IB])
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// FIXME: Dislikes buffers
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I = HmacFromBytesToBytes(SHA512, KPar.concat(iBytes), cPar)
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I = HmacFromBytesToBytes(CJS.algo.SHA512, Array.prototype.slice.call(IB), cPar)
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}
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@ -1,24 +1,20 @@
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/// Implements Bitcoin's feature for signing arbitrary messages.
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var Address = require('./address')
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var convert = require('./convert')
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var BufferExt = require('./buffer')
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var crypto = require('./crypto')
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var ecdsa = require('./ecdsa')
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var ECPubKey = require('./eckey').ECPubKey
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// FIXME: magicHash is incompatible with other magic messages
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var magicBytes = new Buffer('Bitcoin Signed Message:\n')
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// FIXME: incompatible with other networks (Litecoin etc)
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var magicBuffer = new Buffer('\x18Bitcoin Signed Message:\n')
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function magicHash(message) {
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var messageBytes = new Buffer(message)
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var buffer = Buffer.concat([
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new Buffer(convert.numToVarInt(magicBytes.length)),
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magicBytes,
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new Buffer(convert.numToVarInt(messageBytes.length)),
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messageBytes
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])
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var mB = new Buffer(message)
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var mVI = new Buffer(BufferExt.varIntSize(mB.length))
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BufferExt.writeVarInt(mVI, mB.length, 0)
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var buffer = Buffer.concat([magicBuffer, mVI, mB])
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return crypto.hash256(buffer)
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}
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@ -52,67 +52,6 @@ describe('convert', function() {
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})
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})
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describe('numToVarInt', function() {
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describe('works', function() {
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var data = [
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0, 128, 252, // 8-bit
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256, 512, 1024, // 16-bit
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65541, // 32-bit
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4294967299, // 64-bit
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]
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var expected = [
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[0], [128], [252], // 8-bit
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[253, 0, 1], [253, 0, 2], [253, 0, 4], // 16-bit
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[254, 5, 0, 1, 0], // 32-bit
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[255, 3, 0, 0, 0, 1, 0, 0, 0] // 64-bit
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]
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for (var i = 0; i < data.length; ++i) {
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var actual = convert.numToVarInt(data[i])
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assert.deepEqual(actual, expected[i])
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}
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})
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})
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describe('varIntToNum', function() {
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it('works on valid input', function() {
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var data = [
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[0], [128], [252], // 8-bit
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[253, 0, 1], [253, 0, 2], [253, 0, 4], // 16-bit
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[254, 5, 0, 1, 0], // 32-bit
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[255, 3, 0, 0, 0, 1, 0, 0, 0] // 64-bit
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]
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var expected = [
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0, 128, 252, // 8-bit
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256, 512, 1024, // 16-bit
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65541, // 32-bit
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4294967299, // 64-bit
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]
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for (var i = 0; i < data.length; ++i) {
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var actual = convert.varIntToNum(data[i])
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assert.equal(actual.number, expected[i])
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assert.deepEqual(actual.bytes, data[i])
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}
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})
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it('uses only what is necessary', function() {
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var data = [
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[0, 99],
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[253, 0, 1, 99],
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[254, 5, 0, 1, 0, 99],
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[255, 3, 0, 0, 0, 1, 0, 0, 0, 99]
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]
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var expected = [0, 256, 65541, 4294967299]
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for (var i = 0; i < data.length; ++i) {
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var actual = convert.varIntToNum(data[i])
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assert.equal(actual.number, expected[i])
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assert.deepEqual(actual.bytes, data[i].slice(0, -1))
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}
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})
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})
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describe('reverseEndian', function() {
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it('works', function() {
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var bigEndian = "6a4062273ac4f9ea4ffca52d9fd102b08f6c32faa0a4d1318e3a7b2e437bb9c7"
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